Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1

<p>Abstract</p> <p>Protein interacting with C Kinase 1 (PICK1), a PDZ domain-containing scaffolding protein, interacts with multiple different proteins in the mammalian nervous system and is believed to play important roles in diverse physiological and pathological conditions. In t...

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Main Authors: Li Yun-Qing, Xia Jun, Takamiya Kogo, Petralia Ronald S, Wang Wei, Huganir Richard L, Tao Yuan-Xiang, Yaster Myron
Format: Article
Language:English
Published: SAGE Publishing 2011-02-01
Series:Molecular Pain
Online Access:http://www.molecularpain.com/content/7/1/11
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spelling doaj-d7f4d356e2f740569f5106bdaaffaa762020-11-25T03:33:36ZengSAGE PublishingMolecular Pain1744-80692011-02-01711110.1186/1744-8069-7-11Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1Li Yun-QingXia JunTakamiya KogoPetralia Ronald SWang WeiHuganir Richard LTao Yuan-XiangYaster Myron<p>Abstract</p> <p>Protein interacting with C Kinase 1 (PICK1), a PDZ domain-containing scaffolding protein, interacts with multiple different proteins in the mammalian nervous system and is believed to play important roles in diverse physiological and pathological conditions. In this study, we report that PICK1 is expressed in neurons of the dorsal root ganglion (DRG) and spinal cord dorsal horn, two major pain-related regions. PICK1 was present in approximately 29.7% of DRG neurons, most of which were small-less than 750 μm<sup>2 </sup>in cross-sectional area. Some of these PICK1-positive cells co-labeled with isolectin B4 or calcitonin-gene-related peptide. In the dorsal horn, PICK1 immunoreactivity was concentrated in the superficial dorsal horn, where it was prominent in the postsynaptic density, axons, and dendrites. Targeted disruption of PICK1 gene did not affect basal paw withdrawal responses to acute noxious thermal and mechanical stimuli or locomotor reflex activity, but it completely blocked the induction of peripheral nerve injury-induced mechanical and thermal pain hypersensitivities. PICK1 appears to be required for peripheral nerve injury-induced neuropathic pain development and to be a potential biochemical target for treating this disorder.</p> http://www.molecularpain.com/content/7/1/11
collection DOAJ
language English
format Article
sources DOAJ
author Li Yun-Qing
Xia Jun
Takamiya Kogo
Petralia Ronald S
Wang Wei
Huganir Richard L
Tao Yuan-Xiang
Yaster Myron
spellingShingle Li Yun-Qing
Xia Jun
Takamiya Kogo
Petralia Ronald S
Wang Wei
Huganir Richard L
Tao Yuan-Xiang
Yaster Myron
Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1
Molecular Pain
author_facet Li Yun-Qing
Xia Jun
Takamiya Kogo
Petralia Ronald S
Wang Wei
Huganir Richard L
Tao Yuan-Xiang
Yaster Myron
author_sort Li Yun-Qing
title Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1
title_short Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1
title_full Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1
title_fullStr Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1
title_full_unstemmed Preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with C Kinase 1
title_sort preserved acute pain and impaired neuropathic pain in mice lacking protein interacting with c kinase 1
publisher SAGE Publishing
series Molecular Pain
issn 1744-8069
publishDate 2011-02-01
description <p>Abstract</p> <p>Protein interacting with C Kinase 1 (PICK1), a PDZ domain-containing scaffolding protein, interacts with multiple different proteins in the mammalian nervous system and is believed to play important roles in diverse physiological and pathological conditions. In this study, we report that PICK1 is expressed in neurons of the dorsal root ganglion (DRG) and spinal cord dorsal horn, two major pain-related regions. PICK1 was present in approximately 29.7% of DRG neurons, most of which were small-less than 750 μm<sup>2 </sup>in cross-sectional area. Some of these PICK1-positive cells co-labeled with isolectin B4 or calcitonin-gene-related peptide. In the dorsal horn, PICK1 immunoreactivity was concentrated in the superficial dorsal horn, where it was prominent in the postsynaptic density, axons, and dendrites. Targeted disruption of PICK1 gene did not affect basal paw withdrawal responses to acute noxious thermal and mechanical stimuli or locomotor reflex activity, but it completely blocked the induction of peripheral nerve injury-induced mechanical and thermal pain hypersensitivities. PICK1 appears to be required for peripheral nerve injury-induced neuropathic pain development and to be a potential biochemical target for treating this disorder.</p>
url http://www.molecularpain.com/content/7/1/11
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